Tvaroska Igor, Taravel François R, Utille Jean Pierre, Carver Jeremy P
GlycoDesign Inc., 480 University Avenue, Suite 400, Ont., M5G 1V2, Toronto, Canada.
Carbohydr Res. 2002 Feb 18;337(4):353-67. doi: 10.1016/s0008-6215(01)00315-9.
The potential energy surfaces of the hydroxymethyl and methoxymethyl groups in methyl hexopyranosides have been extensively studied, employing quantum mechanical calculations and high resolution NMR data. The structure and energy of the C-5-C-6 rotamers were calculated at the B3LYP level of the density functional theory (DFT). For all, geometry optimizations were carried out for 264 conformers of 16 methyl D-gluco- and methyl D-galactopyranoside derivatives 1-16 at the B3LYP/6-31G** level. For all calculated minima, single-point calculations were performed at the B3LYP/6-311++G** level. Solvent effects were considered using a self-consistent reaction field method. Values of the vicinal coupling constants 3J(H-5-H-6R), 3J(H-5-H-6S), 3J(C-4-H-6R), and 3J(C-4-H-6S) for methyl D-glucopyranosides, methyl D-galactopyranosides and their 6-O-methyl derivatives 9-16 were measured in two solvents, methanol and water. The calculated gg, gt, and tg rotamer populations of the hydroxymethyl and methoxymethyl groups in 9-16 agreed well with experimental data. The results clearly showed that the population of gg, gt, and tg rotamers is sensitive to solvent effects. It was concluded that the preference of rotamers in 1-16 is due to the hydrogen bonding and solvent effects.
已利用量子力学计算和高分辨率核磁共振数据,对甲基己吡喃糖苷中羟甲基和甲氧基甲基的势能面进行了广泛研究。在密度泛函理论(DFT)的B3LYP水平上计算了C-5-C-6旋转异构体的结构和能量。对16种甲基D-葡萄糖苷和甲基D-半乳糖苷衍生物1-16的264个构象异构体,在B3LYP/6-31G水平上进行了几何优化。对所有计算得到的极小值,在B3LYP/6-311++G水平上进行了单点计算。使用自洽反应场方法考虑了溶剂效应。在甲醇和水两种溶剂中测量了甲基D-葡萄糖苷、甲基D-半乳糖苷及其6-O-甲基衍生物9-16的邻位耦合常数3J(H-5-H-6R)、3J(H-5-H-6S)、3J(C-4-H-6R)和3J(C-4-H-6S)。9-16中羟甲基和甲氧基甲基的计算得到的gg、gt和tg旋转异构体分布与实验数据吻合良好。结果清楚地表明,gg、gt和tg旋转异构体的分布对溶剂效应敏感。得出结论,1-16中旋转异构体的偏好是由于氢键和溶剂效应。